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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamics, Site Binding, and Distribution of Counterions in Polyelectrolyte Solutions Studied by Electron Paramagnetic Resonance Spectroscopy
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Dynamics, Site Binding, and Distribution of Counterions in Polyelectrolyte Solutions Studied by Electron Paramagnetic Resonance Spectroscopy

机译:电子顺磁共振波谱研究聚电解质溶液中抗衡离子的动力学,位点结合和分布

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A microscopic picture of counterion condensation in liquid and glassy frozen solutions of the cationic polyelectrolyte poly(diallyldimethylammonium chloride) (PDADMAC) is derived from data obtained by a combination of continuous-wave and pulse electron paramagnetic resonance techniques. The condensation of such divalent anions to the polyelectrolyte chain in the presence of a large excess of polyelectrolyte and monovalent counterions can be described by a dynamic equilibrium between specifically site-bound and nonspecifically territorially bound counterions with exchange between the two states proceeding on time scales significantly shorter than 1 ns. No free divalent counterions are detected. The dynamic electrostatic attachment is manifest in an axially symmetric rotational diffusion tensor, with the unique axis of fast rotation corresponding to the electrostatic bond between one sulfonate group of Fremy's salt and the quaternary ammonium group of the PDADMAC repeat unit. A distance of 0.43 nm between the electron spin and the ~(14)N nucleus of the ammonium group is found by electron spin-echo envelope modulation spectroscopy, suggesting that the site-bound state corresponds to contact ion pairs. The same experiment provides an estimate of 20% site-bound and 80% territorially bound divalent counterions in glycerol/water glassy frozen solution. Pulse electron-electron double resonance measurements show that on nanometer length scales the counterions are virtually homogeneously distributed in three dimensions for high polyelectrolyte concentration but linearly distributed along stretched chains at low polyelectrolyte concentrations where no overlap of chains is expected.
机译:阳离子聚电解质聚(二烯丙基二甲基氯化铵)(PDADMAC)的液体和玻璃态冷冻溶液中抗衡离子缩合的显微照片是从结合了连续波和脉冲电子顺磁共振技术获得的数据中得出的。在大量过量的聚电解质和单价抗衡离子存在下,此类二价阴离子与聚电解质链的缩合可以通过在特定位置结合和非特定区域结合的抗衡离子之间的动态平衡来描述,两种状态之间的交换在时间尺度上进行得很明显短于1 ns。没有检测到游离的二价抗衡离子。动态静电附着表现在轴对称的旋转扩散张量中,其独特的快速旋转轴对应于弗雷米盐的一个磺酸盐基团与PDADMAC重复单元的季铵基团之间的静电键。通过电子自旋回波包络调制光谱法发现,电子自旋与铵基的〜(14)N核之间的距离为0.43 nm,表明位点结合态对应于接触离子对。相同的实验提供了甘油/水玻璃态冷冻溶液中20%的位点结合离子和80%的地域结合二价平衡离子的估计值。脉冲电子-电子双共振测量结果表明,对于高聚电解质浓度,抗衡离子在纳米级尺度上实际上在三个维度上均匀分布,但在低聚电解质浓度下,沿拉伸链线性分布,并且预期不会发生链重叠。

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